Dedicated computer scientist with a strong foundation in programming and problem-solving. Proven track record in customer-centric development, successfully implementing new releases and innovative features. Exceptional teamwork and collaboration skills enhance project outcomes. Committed to continuous learning and seeking opportunities to further develop technical expertise.
As a software engineer with a robust background as a full-stack developer, I bring specialized expertise in robotic process automation (RPA) development, particularly with UiPath and Microsoft Power Automate. Currently, I am deeply involved in overseeing the EVF project, which is aimed at optimizing compensation processes for travel disruptions. Within the software team, I play an active role in development using .NET 6 to drive continuous enhancements.
My responsibilities encompass:
Furthermore, I have taken the initiative to spearhead distinct RPA projects utilizing UiPath and Microsoft Power Automate, aimed at automating diverse processes to boost organizational efficiency and productivity.
By synergizing my proficiency in software engineering with RPA specialization, I ensure smooth collaboration, effective troubleshooting, and the progressive evolution of projects.
During my time working at HiQ, I was enrolled in their trainee program called HiQ Leap. This program provided comprehensive education in various technologies, such as Git, .NET 6/ASP.NET Core, React.js, cloud development, and agile methodologies like Scrum.
As a part of HiQ's own team, I had the opportunity to work on multiple web development projects, assisting their clients. I collaborated closely with HiQ's professionals to deliver successful outcomes for these projects, utilizing my knowledge and skills in web development to provide valuable support.
Company Overview: Senseair is a leading company that has been developing air and gas sensors for 25 years. They manufacture alcohol sensors in Västerås, and sensor cores in Delsbo. A significant portion of SenseAir's workforce is dedicated to scientific research and development (R&D).
I was involved in the SafeStart project, which focused on creating connected alcohol locks for various settings, like buses, trains, emergency services, workplaces, and trucks. These locks ensured that the driver or user was sober. If a positive alcohol test was detected, the vehicle or key cabinet remained locked until an approved result was obtained.
As part of the team, my role was to develop SenseAir's alcohol lock software using asynchronous programming. Our system was integrated with Microsoft Azure Functions, and I extensively worked with Azure Functions, the Azure portal, and the Azure database.
We also built SenseAir's own software, allowing easy transfer of their alcohol locks between different Azure environments. Additionally, I contributed to the development of SenseAir's website, which was connected to Microsoft Azure Functions. By utilizing the Azure IoT Hub, I implemented solutions to connect SenseAir's alcohol lock system with their website, ensuring smooth data exchange and functionality.
Optimization algorithm for a geographic search mission
Focused on optimizing search strategies using advanced computational techniques, improving efficiency and accuracy for real-world applications
This project combined algorithm design, data analysis, and performance evaluation to improve real-world search and rescue scenarios.
I provided support as a lab assistant in a mobile development course. My role involved answering student questions, and guiding them through assignments and projects.
I provided support as a lab assistant in a web development course. My role involved answering student questions, and guiding them through assignments and projects.